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Minimising radial injury: prevention is better than cure
Mamas A Mamas1, Douglas G Fraser, Karim Ratib
1Manchester Heart Centre, Manchester Royal Infirmary, Biomedical Research Centre, Manchester, United Kingdom.
Insights
Transradial coronary intervention reduces bleeding and mortality but may injure the radial artery
Area of Science:
- Cardiovascular Medicine
- Interventional Cardiology
- Vascular Biology
Background:
- Transradial (TR) coronary intervention offers reduced bleeding and mortality compared to the femoral route.
- Emerging evidence suggests TR procedures may cause significant radial artery wall injury and endothelial dysfunction.
Purpose of the Study:
- To investigate the impact of transradial cardiac catheterisation on radial artery endothelial function.
- To explore the link between endothelial dysfunction and observed radial artery injury patterns.
Main Methods:
- Review of recent imaging studies (IVUS, OCT) and histological analyses of the radial artery post-TR procedures.
- Analysis of the role of vascular endothelium in regulating vascular tone, angiogenesis, and remodeling.
Main Results:
- TR cardiac catheterisation is associated with significant radial artery wall injury.
- Endothelial cell dysfunction following TR procedures may contribute to intimal hyperplasia and radial artery occlusion.
Conclusions:
- Radial artery injury and endothelial dysfunction following TR procedures may limit the approach's long-term success and utility.
- Minimizing radial artery injury should be a critical procedural consideration in transradial interventions.
Abstract:
Transradial (TR) coronary intervention is associated with fewer access-site-related bleeding complications and is independently associated with a lower risk of mortality following PCI compared to procedures undertaken through the femoral route. However, recent studies that have undertaken imaging of the radial artery through the use of IVUS and OCT, as well as histological studies, suggest that TR cardiac catheterisation is associated with significant injury to the radial artery wall resulting in significant endothelial cell dysfunction. The vascular endothelium plays a central role in the regulation of vascular tone, angiogenesis and vascular remodelling through the release of vasoactive mediators in response to a variety of stimuli. Hence, trauma to the vascular endothelium and subsequent changes in endothelial cell function may contribute to patterns of injury such as intimal hyperplasia and radial artery occlusion observed following TR cardiac catheterisation. Such injury patterns to the radial artery following TR procedures may limit the success and future utility of the TR approach. Minimisation of radial artery injury should be a key procedural component of procedures undertaken through the transradial approach.
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